Magnetospheric–ionospheric–lithospheric coupling model. 1: Observations during the 5 August 2018 Bayan Earthquake

M Piersanti, M Materassi, R Battiston, V Carbone… - Remote Sensing, 2020 - mdpi.com
The short-term prediction of earthquakes is an essential issue connected with human life
protection and related social and economic matters. Recent papers have provided some …

Comprehensive analysis of the geoeffective solar event of 21 June 2015: effects on the magnetosphere, plasmasphere, and ionosphere systems

M Piersanti, T Alberti, A Bemporad, F Berrilli, R Bruno… - Solar Physics, 2017 - Springer
A full-halo coronal mass ejection (CME) left the Sun on 21 June 2015 from active region
(AR) NOAA 12371. It encountered Earth on 22 June 2015 and generated a strong …

Multifractal and chaotic properties of solar wind at MHD and kinetic domains: An empirical mode decomposition approach

T Alberti, G Consolini, V Carbone, E Yordanova… - Entropy, 2019 - mdpi.com
Turbulence, intermittency, and self-organized structures in space plasmas can be
investigated by using a multifractal formalism mostly based on the canonical structure …

Timescale separation in the solar wind‐magnetosphere coupling during St. Patrick's Day storms in 2013 and 2015

T Alberti, G Consolini, F Lepreti… - Journal of …, 2017 - Wiley Online Library
In this work, we present a case study of the relevant timescales responsible for coupling
between the changes of the solar wind and interplanetary magnetic field (IMF) conditions …

Analysis of large geomagnetically induced currents during the 7–8 September 2017 storm: Geoelectric field mapping

A Wawrzaszek, A Gil, R Modzelewska… - Space …, 2023 - Wiley Online Library
High temporal and high spatial resolution geoelectric field models of two Mäntsälä, Finnish
pipeline geomagnetically induced current (GIC) intervals that occurred within the 7–8 …

On some features characterizing the plasmasphere–magnetosphere–ionosphere system during the geomagnetic storm of 27 May 2017

M Pezzopane, A Del Corpo, M Piersanti… - Earth, Planets and …, 2019 - Springer
This paper presents how the magnetosphere–plasmasphere–ionosphere system was
affected as a whole during the geomagnetic storm peaking on 27 May 2017. The …

Geoelectric field evaluation during the September 2017 geomagnetic storm: MA. I. GIC. model

M Piersanti, S Di Matteo, BA Carter, J Currie… - Space …, 2019 - Wiley Online Library
The space environment near Earth is constantly subjected to changes in the solar wind flow
generated at the Sun. Examples of this variability are the occurrence of powerful solar …

Electromagnetic field observations by the DEMETER satellite in connection with the 2009 L'Aquila earthquake

I Bertello, M Piersanti, M Candidi, P Diego… - Annales …, 2018 - angeo.copernicus.org
To define a background in the electromagnetic emissions above seismic regions, it is
necessary to define the statistical distribution of the wave energy in the absence of seismic …

On fast and slow Earth's magnetospheric dynamics during geomagnetic storms: a stochastic Langevin approach

T Alberti, G Consolini, P De Michelis… - Journal of Space …, 2018 - swsc-journal.org
The Earth's magnetosphere responds to the external changes of interplanetary magnetic
field and solar wind conditions showing a multiscale dynamics, manifesting in the …

The response of high latitude ionosphere to the 2015 St. Patrick's day storm from in situ and ground based observations

G D'Angelo, M Piersanti, L Alfonsi, L Spogli… - Advances in Space …, 2018 - Elsevier
The storm onset of the so-called “St. Patrick's day geomagnetic storm”, on March 17th, 2015
triggered several fluctuations of the electron density in the ionosphere causing severe …